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KSSM Series Vacuum Servo Motor - High Performance for Vacuum Optical Sputtering by China Suppliers & Factory
Options
- Safe brake
- 48/110VDC winding voltage
- Custom cable lengths
Ordering Information
① Product series
KSSM series servo motor
② Winding voltage
48 = 48VDC
220 = 220VAC
380 = 380VAC
220 = 220VAC
380 = 380VAC
③ Stroke length
400 = 400W
750 = 750W
1800 = 1800W
3800 = 3800W
750 = 750W
1800 = 1800W
3800 = 3800W
④ Safe brake
Blank = without safe brake
B = with safe brake
B = with safe brake
⑤ Environmental temperature ratings
| Environmental temperature rating code | Temperature range (℃) | Vacuum class (Pa, optional) |
Radiation resistance (Gy, optional) |
|---|---|---|---|
| RHT | -20~+200 | 10-3 | 106 |
| SHT | -20~+200 | 10-3/10-5/10-7 | - |
| HT | -20~+150 | 10-3/10-5/10-7 | - |
| NTL1 | -40~+85 | 10-3/10-5 | - |
| NTL2 | -60~+120 | 10-3/10-5 | - |
| NTL3 | -65~+125 | 10-3 | - |
| NTL4 | -60~+150 | - | - |
| NTL5 | -80~+40 | 10-3 | - |
| SLT* | -196~+40 | 10-3/10-3/10-3 | - |
| L*H* | customized | customized | customized |
*It is recommended that, when the KSSM servo motor is operated in the SLT temperature range (-196 to +40℃), the speed should be limited to a maximum of 300rpm. Contact us for details.
⑥ Vacuum class
Blank = Non-vacuum
V3 = Low pressure or vacuum to 10-3Pa
V5 = Vacuum to 10-5Pa
V7 = Vacuum to 10-7Pa
V3 = Low pressure or vacuum to 10-3Pa
V5 = Vacuum to 10-5Pa
V7 = Vacuum to 10-7Pa
⑦ Radiation resistance
Blank = No radiation resistance
RH = Radiation resistance (total dose 106Gy)
RH = Radiation resistance (total dose 106Gy)
Description
Vacuum optical sputtering is a key process for manufacturing high-quality optical thin films (such as anti-reflection coatings, high-reflection coatings, and optical filters), requiring the coating chamber to be maintained at an ultra-high vacuum of 10⁻⁷ Pa to prevent residual gas molecules from affecting film purity and interface quality. In this process, the workpiece holder needs to rotate continuously, tilt, or move in complex trajectories to achieve uniform film thickness distribution and excellent optical performance. The KSSM series vacuum servo motor is an ideal choice for driving such motions. As a professional vacuum servo motor, the KSSM series operates reliably for extended periods under 10⁻⁷ Pa ultra-high vacuum, with its stainless steel housing and special sealing design ensuring extremely low material outgassing rates, preventing vacuum degradation or optical film contamination from outgassing. Unlike conventional motors, this vacuum servo motor features high-temperature-resistant windings and low-volatility lubrication systems specifically designed for vacuum environments, remaining stable and reliable even during baking degassing processes at operating temperatures as high as 260℃. During actual coating processes, the KSSM series vacuum servo motor is installed directly inside the vacuum chamber, driving optical coating domes or planar target substrate stages, achieving "in-chamber direct drive" and eliminating complex dynamic seals and additional torque losses associated with traditional feedthrough mechanisms. This vacuum servo motor is equipped with a resolver as a feedback element, offering strong electromagnetic interference immunity and providing accurate speed and position signals even in strong electromagnetic noise environments generated by plasma glow discharges or ion source bombardment. For optical coating processes requiring deep cryogenic cooling, the KSSM series vacuum servo motor adapts to extreme low temperatures of -196℃, ensuring that lubrication does not solidify and output power does not derate inside liquid nitrogen-cooled chambers. Multiple vacuum servo motors can work cooperatively to achieve multi-axis synchronous control, enabling complex trajectory scanning coating of optical elements. After adopting the KSSM series vacuum servo motor, optical coating equipment can eliminate external motors and magnetic fluid seals, significantly reducing system complexity and leakage risks. From deep ultraviolet to far infrared, from consumer-grade lenses to aerospace-grade optical payloads, the application of vacuum servo motors has made high-volume production of high-quality optical thin films possible. The KSSM series vacuum servo motor, with its dual advantages of ultra-high vacuum compatibility and ultra-wide temperature range adaptability, has become a core motion component in vacuum optical sputtering equipment, fully demonstrating the critical value of vacuum servo motors in modern optical manufacturing technology.
Frequently Asked Questions (FAQ)
Q1:
What is the maximum vacuum level that the KSSM series servo motor can support?
The KSSM series vacuum servo motor is designed to operate reliably for extended periods under ultra-high vacuum levels of up to 10⁻⁷ Pa (V7 class), making it ideal for clean, high-vacuum optical sputtering applications.
Q2:
How does the KSSM series handle extreme temperature environments?
It features high-temperature-resistant windings and a low-volatility lubrication system that allows it to adapt to wide operating ranges, from deep cryogenic temperatures of -196℃ (SLT class) up to high temperatures of +200℃ (RHT/SHT classes). It can also withstand baking degassing processes up to 260℃.
Q3:
What precaution is needed when operating the motor in the SLT (-196 to +40℃) temperature range?
When operating within the SLT temperature range, it is recommended that the motor speed be limited to a maximum of 300 rpm to ensure optimal performance and longevity.
Q4:
What type of feedback element is used, and how does it handle electromagnetic noise?
The motor is equipped with a resolver feedback element. Resolvers offer high immunity to electromagnetic interference, ensuring accurate speed and position feedback even in environments with high plasma glow discharge or ion source noise.
Q5:
Does the KSSM series support radiation-resistant options?
Yes, there is an optional radiation resistance configuration (coded as RH) that supports a total radiation dose of up to 10⁶ Gy.
Q6:
Are there safety braking options available for this motor?
Yes, the motor offers an optional safe brake configuration (indicated by code "B" in the ordering information) to secure the load when power is removed.










